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Structure of ULF Pc3 waves at low altitudes

机译:ULF波生物结构在低海拔

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Recent low-orbiting observations at satellites with high-accuracy magnetometers onboard (Oersted, CHAMP, and ST5) have provided a detailed picture of the Pc3 wave structure in the topside ionosphere. Pc3 waves were detected very clearly in the compressional component of the satellite magnetic field data, whereas on the ground their signature was found in the H component. The occurrence of a significant compressional component in Pc3 pulsations in the topside ionosphere was also evidenced by radio-sounding measurements of ionospheric plasma oscillations. The following possibilities of ULF compressional disturbance excitation are considered: (1) an incident Alfvén wave generates an evanescent fast mode as a result of its interaction with the anisotropically conducting ionosphere; (2) transport of ULF wave energy from a distant source toward the ionosphere predominantly occurs by a fast mode. We estimate quantitatively the expected relationships between the Pc3 wave magnetic components above the ionosphere and on the ground produced by these different mechanisms and have derived simple analytical relationships between the compressional and ground signals for both mechanisms. Numerical modeling with the use of exact formulas has shown that these approximations work well over a wide range of wave scales. This model has been applied to the interpretation of Pc 3 waves observed by CHAMP in the upper ionosphere and by ground stations at midlatitudes. In general, the observed ratio between the compressional component in space and the ground signal corresponds better to the scenario of direct fast mode transmission to the ground.
机译:最近的低轨道卫星的观测与高精度磁力仪上(奥斯特,冠军和ST5)提供了一个生物波结构的详细图片在上面的电离层。明显的挤压组件卫星的磁场数据,而上地面的签名被发现H组件。压缩组件在生物脉动上部电离层也证明了这一点无线电探空测量电离层等离子体振荡。挤压扰动激励是认为:(1)阿尔芬波生成一个事件一逝快速模式的结果与anisotropically进行交互电离层;一个遥远的来源向电离层主要发生在快速模式。定量预期之间的关系生物波磁组件之上电离层和在地面上产生的不同的机制,推导出简单分析之间的关系压缩和地面的信号机制。精确的公式表明,这些近似超过范围广泛的工作波尺度。解释电脑3波观测到冠军上层电离层和地面站情理之中。在空间和压缩组件之间地面信号对应的更好直接快速模式传输的场景地面。

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